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The Diagnosis of Autism Spectrum Disorder Based on the Random Neural Network Cluster

机译:基于随机神经网络簇的自闭症谱系障碍诊断

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摘要

As the autism spectrum disorder (ASD) is highly heritable, pervasive and prevalent, the clinical diagnosis of ASD is vital. In the existing literature, a single neural network (NN) is generally used to classify ASD patients from typical controls (TC) based on functional MRI data and the accuracy is not very high. Thus, the new method named as the random NN cluster, which consists of multiple NNs was proposed to classify ASD patients and TC in this article. Fifty ASD patients and 42 TC were selected from autism brain imaging data exchange (ABIDE) database. First, five different NNs were applied to build five types of random NN clusters. Second, the accuracies of the five types of random NN clusters were compared to select the highest one. The random Elman NN cluster had the highest accuracy, thus Elman NN was selected as the best base classifier. Then, we used the significant features between ASD patients and TC to find out abnormal brain regions which include the supplementary motor area, the median cingulate and paracingulate gyri, the fusiform gyrus (FG) and the insula (INS). The proposed method provides a new perspective to improve classification performance and it is meaningful for the diagnosis of ASD.
机译:由于自闭症谱系障碍(ASD)具有高度的遗传性,普遍性和普遍性,因此ASD的临床诊断至关重要。在现有文献中,通常基于功能性MRI数据使用单个神经网络(NN)对典型对照(TC)的ASD患者进行分类,其准确性不是很高。因此,本文提出了一种由多个神经网络组成的名为随机神经网络簇的新方法,以对ASD患者和TC进行分类。从自闭症脑成像数据交换(ABIDE)数据库中选择了50例ASD患者和42 TC。首先,应用五种不同的NN来构建五种类型的随机NN集群。其次,比较了五种随机NN簇的准确性,以选择最高的一种。随机的Elman NN簇具有最高的准确性,因此Elman NN被选为最佳基础分类器。然后,我们利用ASD患者和TC之间的显着特征来发现异常的大脑区域,包括补充运动区,正中扣带回和副切缘回,梭形回(FG)和岛状(INS)。所提出的方法为提高分类性能提供了新的思路,对ASD的诊断具有重要意义。

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